Antioxidant effect of bovine serum albumin on membrane lipid peroxidation induced by iron chelate and superoxide |
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Authors: | Kenji Fukuzawa Yasuaki Saitoh Kentaro Kogure Akira Tokumura Akira Shibata |
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Affiliation: | a Graduate School of Pharmaceutical Sciences, The University of Tokushima, Shomachi-1, Tokushima 770-8505, Japan b Graduate School of Pharmaceutical Sciences, Kumamoto University, Oe-honmachi-5, Kumamoto 862-0973, Japan |
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Abstract: | Albumin is supposed to be the major antioxidant circulating in blood. This study examined the prevention of membrane lipid peroxidation by bovine serum albumin (BSA). Lipid peroxidation was induced by the exposing of enzymatically generated superoxide radicals to egg yolk phosphatidylcholine liposomes incorporating lipids with different charges in the presence of chelated iron catalysts. We used three kinds of Fe3+-chelates, which initiated reactions that were dependent on membrane charge: Fe3+-EDTA and Fe3+-EGTA catalyzed peroxidation in positively and negatively charged liposomes, respectively, and Fe3+-NTA, a renal carcinogen, catalyzed the reaction in liposomes of either charge. Fe3+-chelates initiated more lipid peroxidation in liposomes with increased zeta potentials, followed by an increase of their availability for the initiation of the reaction at the membrane surface. BSA inhibits lipid peroxidation by preventing the interaction of iron chelate with membranes, followed by a decrease of its availability in a charge-dependent manner depending on the iron-chelate concentration: one is accompanied and the other is unaccompanied by a change in the membrane charge. The inhibitory effect of BSA in the former at high concentrations of iron chelate would be attributed to its electrostatic binding with oppositely charged membranes. The inhibitory effect in the latter at low concentrations of iron chelate would be caused by BSA binding with iron chelates and keeping them away from membrane surface where lipid peroxidation is initiated. Although these results warrant further in vivo investigation, it was concluded that BSA inhibits membrane lipid peroxidation by decreasing the availability of iron for the initiation of membrane lipid peroxidation, in addition to trapping active oxygens and free radicals. |
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Keywords: | BSA, bovine serum albumin aBSA, acetylated BSA mBSA, methylated BSA nBSA, native BSA DCP, dicetylphosphate EDTA, ethylenediamine tetraacetic acid EGTA, bis(2-aminoethyl ether)ethyleneglycol tetraacetic acid EYPC, egg yolk phosphatidylcholine HEPES, 2-hydroxyethylpiperazine-2-ethanesulfonic acid NTA, nitrilotriacetic acid (nitrilotriacetate) PC-OOH, hydroperoxides of egg yolk phosphatidylcholine poly-Glu, poly- smallcaps" >l-glutamic acid poly-Lys, poly- smallcaps" >l-lysine poly (Lys-Phe), poly- smallcaps" >l-lysine- smallcaps" >l-phenylalanine SA, stearylamine TBA, thiobarbituric acid X, xanthine XO, xanthine oxidase |
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